Lithium-ion conductive ceramic textile: A new architecture for flexible solid-state lithium metal batteries

[Display omitted] Designing solid-state lithium metal batteries requires fast lithium-ion conductors, good electrochemical stability, and scalable processing approaches to device integration. In this work, we demonstrate a unique design for a flexible lithium-ion conducting ceramic textile with the...

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Veröffentlicht in:Materials today (Kidlington, England) England), 2018-07, Vol.21 (6), p.594-601
Hauptverfasser: Gong, Yunhui, Fu, Kun, Xu, Shaomao, Dai, Jiaqi, Hamann, Tanner R., Zhang, Lei, Hitz, Gregory T., Fu, Zhezhen, Ma, Zhaohui, McOwen, Dennis W., Han, Xiaogang, Hu, Liangbing, Wachsman, Eric D.
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Sprache:eng
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Zusammenfassung:[Display omitted] Designing solid-state lithium metal batteries requires fast lithium-ion conductors, good electrochemical stability, and scalable processing approaches to device integration. In this work, we demonstrate a unique design for a flexible lithium-ion conducting ceramic textile with the above features for use in solid-state batteries. The ceramic textile was based on the garnet-type conductor Li7La3Zr2O12 and exhibited a range of desirable chemical and structural properties, including: lithium-ion conducting cubic structure, low density, multi-scale porosity, high surface area/volume ratio, and good flexibility. The solid garnet textile enabled reinforcement of a solid polymer electrolyte to achieve high lithium-ion conductivity and stable long-term Li cycling over 500 h without failure. The textile also provided an electrolyte framework when designing a 3D electrode to realize ultrahigh cathode loading (10.8 g/cm2 sulfur) for high-performance Li-metal batteries.
ISSN:1369-7021
1873-4103
DOI:10.1016/j.mattod.2018.01.001